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Torque-ripple minimization in switched reluctance motors using sliding mode variable structure control

机译:使用滑模变结构控制的开关磁阻电动机中的转矩脉动最小化

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In this paper, a novel torque ripple minimization method, namely, sliding mode variable structure is proposed for switched reluctance motor (SRM). The total reference torque is calculated by the speed error via the sliding mode variable structure controller, and the expected phase torque will be got through the Torque Sharing Function. Then make margin calculations between the expected phase torque and the actual electromagnetic torque, and then the expected phase current is got by the PI regulator. At last, under the current hysteresis control, the actual phase current follows the expected phase current well. The simulation results show that with fixed angle chopped control method compared, the torque ripple coefficient is reduced by 17.1% at low speed and 6.6% at higher speed respectively, and both the feasibility and validity of this scheme are proved by the experimental results.
机译:本文提出了一种新的转矩脉动最小化方法,即滑模变结构用于开关磁阻电机(SRM)。总参考转矩是通过滑模可变结构控制器的速度误差计算得出的,而预期的相位转矩将通过转矩共享功能获得。然后在预期相转矩和实际电磁转矩之间进行裕度计算,然后由PI调节器获得预期相电流。最后,在电流磁滞控制下,实际相电流很好地遵循了预期相电流。仿真结果表明,与定角斩波控制方法相比,低速时转矩脉动系数降低了17.1%,高速时转矩脉动系数降低了6.6%,实验结果证明了该方案的可行性和有效性。

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